Simultaneous Multicolor Observations of Starlink's Darksat by The Murikabushi Telescope with
arXiv:2010.04655 · doi:10.3847/1538-4357/abc695
Abstract
We present the -, -, and -band magnitudes and associated colors of the Starlink's STARLINK-1113 (one of the standard Starlink satellites) and 1130 (Darksat) with a darkening treatment to its surface. By the 105 cm Murikabushi telescope/, simultaneous multicolor observations for the above satellites were conducted four times: on April 10, 2020, May 18, 2020 (for Darksat), and June 11, 2020 (for Darksat and STARLINK-1113). We found that (1) -band apparent magnitudes of Darksat ( mag) are comparable to or brighter than that of STARLINK-1113 ( mag), (2) the shorter the observed wavelength is, the fainter the satellite magnitudes tend to become, (3) the reflected flux by STARLINK-1113 is extremely ( mag) redder than that of Darksat, (4) there is no clear correlation between the solar phase angle and orbital-altitude-scaled magnitude, (5) by flux-model fitting of the satellite trails with the blackbody radiation, it is found that the albedo of Darksat is about a half of that of STARLINK-1113. Especially, the result (1) is inconsistent with the previous studies. However, considering both solar and observer phase angles and atmospheric extinction, the brightness of STARLINK-1113 can be drastically reduced in the and band. Simultaneous multicolor-multispot observations more than three colors would give us more detailed information regarding the impact by the low Earth orbit satellite constellations.
accepted to ApJ. 18 pages, 10 figures
References in corpus (4)
- K-corrections and filter transformations in the ultraviolet, optical, and near infrared
- Empirical Color Transformations Between SDSS Photometry and Other Photometric Systems
- The Low Earth Orbit Satellite Population and Impacts of the SpaceX Starlink Constellation
- First observations and magnitude measurement of Starlink's Darksat
Cited by in corpus (7)
- Visibility Predictions for Near-Future Satellite Megaconstellations: Latitudes near 50 Degrees will Experience the Worst Light Pollution
- Photometric Characterization and Trajectory Accuracy of Starlink Satellites: Implications for Ground-Based Astronomical Surveys
- Plaskett 1.8 metre Observations of Starlink Satellites
- The Steward Observatory LEO Satellite Photometric Survey
- Astrosat: Forecasting satellite transits for optical astronomical observations
- Multicolor and multi-spot observations of Starlink's Visorsat
- Short timescale imaging polarimetry of geostationary satellite Thor-6: the nature of micro-glints